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通过视频速率、电压敏感染料成像观察蝾螈嗅球神经元活动。II. 电刺激诱发反应的时空特性。

Salamander olfactory bulb neuronal activity observed by video rate, voltage-sensitive dye imaging. II. Spatial and temporal properties of responses evoked by electric stimulation.

作者信息

Cinelli A R, Kauer J S

机构信息

Department of Neurosurgery, Tufts Medical School, Boston, Massachusetts, USA.

出版信息

J Neurophysiol. 1995 May;73(5):2033-52. doi: 10.1152/jn.1995.73.5.2033.

Abstract
  1. Video imaging of changes in voltage-sensitive dye (VSD) fluorescence was used to analyze spatial and temporal properties of activity patterns in the in vivo salamander olfactory bulb and primordium piriform cortex after electric stimulation. Distribution of activity among and within the neuronal layers was analyzed after orthodromic stimulation of the whole olfactory nerve (ON), isolated fascicles, or local epithelial sites, and after antidromic stimulation of the medial olfactory tract (OT). 2. Optical signals propagated through the bulbar layers with a sequence that correlates with electrophysiological responses. After orthodromic stimulation, VSD responses started in the glomerular layer, spread to the deeper laminae, and, after reaching the region of mitral/tufted somata, were observed as a brief burst of activity in the OT. Compound action potentials in the ON were associated with short-duration, rapidly depolarizing optical responses in the ON layer. Responses in glomerular layer and external plexiform layer (EPL) first showed in some recordings a brief, small-amplitude hyperpolarization, followed by a period of depolarization, followed by a second, longer-lasting hyperpolarization. The periods of optical hyperpolarization could be related to events observed in intracellular mitral/tufted cell recordings. 3. With shocks delivered to the entire ON, depolarizing responses were nonhomogeneously distributed, appearing as multiple foci or bands of activity. Spatial patterns within each bulbar layer had poorly defined borders. Sites showing short-latency responses were often those with the largest and longest-lasting activity. 4. Increasing the intensity of stimulation to the ON enhanced the size and duration of the depolarizing and hyperpolarizing responses. The short-latency, early hyperpolarization was best seen with low-intensity, peripherally placed stimuli. 5. ON stimulation also elicited activity in the contralateral bulb. Activity started at the innermost layers and spread in patches to regions of the EPL just beneath the glomeruli. These had durations similar to ipsilateral responses, but longer latencies. A period of early hyperpolarization, longer than that on the ipsilateral side, was followed by prolonged depolarization and then by a second, later hyperpolarization. 6. Antidromic stimuli applied to the OT evoked optical responses consisting of a period of depolarization followed by hyperpolarization, similar to the components elicited by orthodromic stimuli. These responses had short time courses, began in the deeper layers, and spread to the superficial region of the bulb usually without reaching the glomerular region. 7. Punctate stimulation of the mucosa or nerve elicited depolarizing and hyperpolarizing events that depended on the stimulation site.(ABSTRACT TRUNCATED AT 400 WORDS)
摘要
  1. 利用电压敏感染料(VSD)荧光变化的视频成像技术,分析电刺激后体内蝾螈嗅球和梨状皮质原基中活动模式的时空特性。在对整个嗅神经(ON)、分离的神经束或局部上皮部位进行顺行刺激后,以及对内侧嗅束(OT)进行逆行刺激后,分析神经元层之间和内部的活动分布。2. 光信号以与电生理反应相关的顺序通过嗅球各层传播。顺行刺激后,VSD反应始于肾小球层,扩散到更深的层,在到达二尖瓣/簇状细胞体区域后,在OT中观察到短暂的活动爆发。ON中的复合动作电位与ON层中持续时间短、快速去极化的光反应相关。在一些记录中,肾小球层和外丛状层(EPL)的反应首先表现为短暂的、小幅度的超极化,随后是去极化期,接着是第二次持续时间更长的超极化。光超极化期可能与细胞内二尖瓣/簇状细胞记录中观察到的事件有关。3. 对整个ON施加电刺激时,去极化反应分布不均匀,表现为多个活动焦点或带。每个嗅球层内的空间模式边界不清晰。显示短潜伏期反应的部位通常是活动最大且持续时间最长的部位。4. 增加对ON的刺激强度会增强去极化和超极化反应的大小和持续时间。低强度、外周放置的刺激最能观察到短潜伏期的早期超极化。5. ON刺激还会在对侧嗅球中引发活动。活动始于最内层,以斑块形式扩散到肾小球下方EPL的区域。这些活动的持续时间与同侧反应相似,但潜伏期更长。一段比同侧更长的早期超极化期之后是长时间的去极化,然后是第二次、更晚出现的超极化。6. 对OT施加逆行刺激会引发光反应,包括一段去极化期,随后是超极化期,类似于顺行刺激引发的成分。这些反应的时间进程较短,始于更深的层,通常扩散到嗅球的浅表区域,而不会到达肾小球区域。7. 对黏膜或神经的点状刺激会引发取决于刺激部位的去极化和超极化事件。(摘要截取自400字)

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